A Fundamental Study on Redox Behaviour of Oxygen Carriers in Chemical Looping Combustion. Our goal here is to acquire fundamental knowledge about the redox behaviour of metal oxide oxygen carriers which, arguably, underpins the feasibility of the Chemical Looping Combustion (CLC) concept. Although the proposed work is fundamental and will contribute to the advancement of knowledge, the results will have immediate practical applications in power generation industry at both national and internatio ....A Fundamental Study on Redox Behaviour of Oxygen Carriers in Chemical Looping Combustion. Our goal here is to acquire fundamental knowledge about the redox behaviour of metal oxide oxygen carriers which, arguably, underpins the feasibility of the Chemical Looping Combustion (CLC) concept. Although the proposed work is fundamental and will contribute to the advancement of knowledge, the results will have immediate practical applications in power generation industry at both national and international levels. This should significantly contribute to the Australian Government's efforts in producing world class solutions for abatement of greenhouse emissions (Research Priority 1: An Environmentally Sustainable Australia, Priority Goal 1.4 - Reducing and capturing emissions in transport and energy generation).Read moreRead less
Discipline, Morale and Winning Wars: Understanding the Relationships Between Discipline and Combat Performance in Low-Intensity Conflict. Discipline and morale are key elements in combat performance, particularly in Low-Intensity Conflict (LIC). This project examines the relationships between discipline, morale and combat performance using the Australian Army in Vietnam as a case study. It provides insights into better understanding and managing discipline and morale to produce and sustain comba ....Discipline, Morale and Winning Wars: Understanding the Relationships Between Discipline and Combat Performance in Low-Intensity Conflict. Discipline and morale are key elements in combat performance, particularly in Low-Intensity Conflict (LIC). This project examines the relationships between discipline, morale and combat performance using the Australian Army in Vietnam as a case study. It provides insights into better understanding and managing discipline and morale to produce and sustain combat performance. It assists the Army to avoid the negative effects of failures in discipline and morale that produced the My Lai massacre and the Abu Ghraib fiasco. It also helps position Australia internationally as a contributor to the better understanding of LIC, and fills a gap in Australian historiography of war.Read moreRead less
Understanding Low-Intensity Conflict. Since 1945, Low-Intensity Conflict (LIC) has become the dominant form of warfare. Conventional armies have a poor record of success in fighting LIC. This project uses the records of the Australian Army's operations in the Vietnam War to better understand it's operational performance there and to unearth insights into the conduct of LIC. The project has the potential to reduce casualties, both military and civilian, and assist the Army in selecting new war-fi ....Understanding Low-Intensity Conflict. Since 1945, Low-Intensity Conflict (LIC) has become the dominant form of warfare. Conventional armies have a poor record of success in fighting LIC. This project uses the records of the Australian Army's operations in the Vietnam War to better understand it's operational performance there and to unearth insights into the conduct of LIC. The project has the potential to reduce casualties, both military and civilian, and assist the Army in selecting new war-fighting technologies, designing training and developing doctrine for future LIC. The project will raise Australia's profile in theorising about this troubling but increasingly common form of warfare.Read moreRead less
OPTIMISATION OF COMPACT BOILING HEAT EXCHANGERS USING ARTIFICIAL NEURAL NETWORK. Compact heat exchangers are increasingly considered for duties in many industrial applications, involving phase change processes of boiling and condensation. In many cases such applications are completely new and no previous experience or information is available for constructive design of compact heat exchangers. This project aims to develop a commercially-viable design methodology that will be innovative and novel ....OPTIMISATION OF COMPACT BOILING HEAT EXCHANGERS USING ARTIFICIAL NEURAL NETWORK. Compact heat exchangers are increasingly considered for duties in many industrial applications, involving phase change processes of boiling and condensation. In many cases such applications are completely new and no previous experience or information is available for constructive design of compact heat exchangers. This project aims to develop a commercially-viable design methodology that will be innovative and novel with in mind of robust and speedy computations of key design parameters of compact boiling heat exchangers through the artificial neural networks (ANN) model and maintaining the inherent accuracy associated with the solutions of the boiling flow and heat transfer processes from computational fluid dynamics (CFD) and validated using experimental data. It will provide a cutting edge to the Industry Partner to compete successfully on the local and global market fronts in designing and manufacturing compact boiling heat exchangers.Read moreRead less
The Architecture of Academic Research. In pursuit of increased and more innovative research there has been substantial expenditure in the construction of research environments yet little independent evaluation of their impact. The results of this project are crucial in determining future best practice in the design and operation of research environments. It will support the Australian design industry to achieve better outcomes in tertiary facilities here and abroad. More broadly, the architectur ....The Architecture of Academic Research. In pursuit of increased and more innovative research there has been substantial expenditure in the construction of research environments yet little independent evaluation of their impact. The results of this project are crucial in determining future best practice in the design and operation of research environments. It will support the Australian design industry to achieve better outcomes in tertiary facilities here and abroad. More broadly, the architectural profession and university sectors will gain critical insights into each other's working methods and needs. Ultimately, this project will help to improve the effectiveness of research in Australian universities. Read moreRead less
ARC Research Network for a Secure Australia. The Research Network for a Secure Australia (RNSA) is a multi-disciplinary collaboration established to strengthen Australia's research capacity for protecting critical infrastructure from natural or human-caused disasters including terrorist acts. The RNSA will facilitate a knowledge-sharing network for research organisations, government and the private sector to develop research tools and methods to mitigate emerging safety and security issues relat ....ARC Research Network for a Secure Australia. The Research Network for a Secure Australia (RNSA) is a multi-disciplinary collaboration established to strengthen Australia's research capacity for protecting critical infrastructure from natural or human-caused disasters including terrorist acts. The RNSA will facilitate a knowledge-sharing network for research organisations, government and the private sector to develop research tools and methods to mitigate emerging safety and security issues relating to critical infrastructure. World-leaders with extensive national and international linkages in relevant scientific, engineering and technological research will lead this collaboration. The RNSA will launch various activities to foster research collaboration and nurture young investigators.Read moreRead less
Special Research Initiatives - Grant ID: SR0354781
Funder
Australian Research Council
Funding Amount
$40,000.00
Summary
Research Network for Engineering a Secure Australia (RNESA). The Research Network for Engineering a Secure Australia (RNESA) is a multi-disciplinary collaboration established to strengthen Australia's science and technology capacity for protecting the Nation's critical infrastructure from natural or human-caused disasters. RNESA will facilitate a knowledge sharing network for government, universities and the private sector to produce innovative engineering solutions to the emerging security prob ....Research Network for Engineering a Secure Australia (RNESA). The Research Network for Engineering a Secure Australia (RNESA) is a multi-disciplinary collaboration established to strengthen Australia's science and technology capacity for protecting the Nation's critical infrastructure from natural or human-caused disasters. RNESA will facilitate a knowledge sharing network for government, universities and the private sector to produce innovative engineering solutions to the emerging security problems relating to the safety of critical infrastructure. This initiative will draw together researchers across disciplines to identify a roadmap for future R&D in this area. RNESA's final outcomes will lead to multi-hazard mitigation strategies and a real-time crisis support network to enable the nation to manage potential disasters.Read moreRead less